Insight and strategies into paracrine mechanisms of stem cells transplantation induced cardiac function improvement
Pei, Z.-y.; Zhao, Y.-s.
Zhonghua Xin Xue Guan Bing Za Zhi 38(4): 380-384
2010
ISSN/ISBN: 0253-3758 PMID: 20654091 Document Number: 641996
Document emailed within 1 workday
Related Documents
Qi, C.-m.; Ma, G.-s.; Liu, N.-f.; Shen, C.-x.; Chen, Z.; Liu, X.-j.; Hu, Y.-p.; Zhang, X.-l.; Teng, G.-j.; Ju, S.-h.; Ma, M.; Tang, Y.-l. 2008: Transplantation of magnetically labeled mesenchymal stem cells improves cardiac function in a swine myocardial infarction model Chinese Medical Journal 121(6): 544-550Bashuda, H.; Seino, K.; Ra, C.; Yagita, H.; Okumura, K. 1997: Lack of cognate help by CD4+ T cells and anergy of CD8+ T cells are the principal mechanisms for anti-leukocyte function-associated antigen-1/intercellular adhesion molecule-1-induced cardiac allograft tolerance Transplantation 63(1): 113-118
Yang, J.-f.; Zhou, W.-w.; Tang, T.; Yu, J.-f.; Zhou, X.-m.; Hu, J.-g. 2006: Effects of myocardial transplantation of mesenchymal stem cells transfected with vascular endothelial factor gene on improvement of heart function and angiogenesis after myocardial infarction: experiment with rats Zhonghua Yi Xue Za Zhi 86(15): 1027-1034
D.K.etser D.M.; Risbridger, G.P.; Drummond, A.E.; Gonzales, G.; Sun, Y.T. 1991: Paracrine mechanisms in the regulation of testicular function Haseltine, F P And J K Findlay (Ed ) Scientific Basis Of Fertility Regulation: Growth Factors in Fertility Regulation; Symposium on Potential Of Molecular Biology in Fertility Regulation: Growth Regulatory Factors, Bethesda, Maryland, Usa, September 22-24, 1988 Xxii+380p Cambridge University Press: Cambridge, England, Uk; New York, New York, Usa Illus 143-156
Piquet-Pellorce, C.; Dorval, I.; Jégou, B. 1997: Paracrine control of spermatogenetic stem cells: example of the leukemia inhibitory factor Contraception Fertilite Sexualite 25(7-8): 565-568
Ma, X-hui.; Gao, C-qing.; Li, B-jun.; Li, L-bing.; Jiang, S-li.; Xiao, C-song.; Wu, Y. 2010: The empirical study on paracrine communication of bone marrow mesenchymal stem cells Zhonghua Yi Xue Za Zhi 90(7): 496-498
Zhang, J.; Li, G-shan.; Li, G-cao.; Zhou, Q.; Li, W-qiang.; Xu, H-xin. 2005: Autologous mesenchymal stem cells transplantation in adriamycin-induced cardiomyopathy Chinese Medical Journal 118(1): 73-76
Hassanin, O.M.; El-Masry, T.M.; Abu-Zahra, F.A.; El-Adawy, S.; Abdellah, A.M. 2019: Immune-Modulatory Changes After Transplantation Therapy of Insulin Producing Cells Derived from Wharton's Jelly Human Umbilical Cord-Mesenchymal Stem Cells in Diabetes Induced Rats Egyptian Journal of Immunology 26(1): 55-67
Anderson, R.J.; Ray, C.J. 1998: Potential autocrine and paracrine mechanisms of recovery from mechanical injury of renal tubular epithelial cells American Journal of Physiology 274(3): F463-F472
Zhou, Y-ping.; Hu, Y-hui.; Wu, H-qin.; An, C.; Wang, J. 2009: Association between the number of peripheral blood stem cells and cardiac function index in patients with ischemic heart failure Zhonghua Xin Xue Guan Bing Za Zhi 37(6): 491-494
Schwinger, W.; Urban, C.; Lackner, H.; Kerbl, R.; Sovinz, P.; Gardner, H.; Peters, C.; Niederwieser, D.; Fink, F.M.; Kögler, G. 1999: Transplantation of related and unrelated umbilical cord blood stem cells in Austria. Austrian Working Party for Stem Cell Transplantation. Austrian Society of Hematology and Oncology Wiener klinische Wochenschrift 111(9): 348-353
Matsushita, N.; Kobayashi, H.; Aruga, A.; Yamamoto, M. 2014: Establishment of induced pluripotent stem cells from adipose tissue-derived stem cells for dendritic cell-based cancer vaccines Gan to Kagaku Ryoho. Cancer and ChemoTherapy 41(4): 467-470
Min, M.; Zhang, Z. 2015: Mechanism of bone marrow mesenchymal stem cells in treatment of noise induced hearing loss with intravenous transplantation Zhonghua Er Bi Yan Hou Tou Jing Wai Ke Za Zhi 50(1): 75-79
Lakota, J.; Fuchsberger, P. 1996: Autologous stem cell transplantation with stem cells preserved in the presence of 4.5 and 2.2% DMSO Bone Marrow Transplantation 18(1): 262-263
Ruan, W.; Pan, C-zhen.; Huang, G-qian.; Li, Y-lin.; Ge, J-bo.; Shu, X-hong. 2005: Assessment of left ventricular segmental function after autologous bone marrow stem cells transplantation in patients with acute myocardial infarction by tissue tracking and strain imaging Chinese Medical Journal 118(14): 1175-1181
Ribas-Mundó, M. 1999: Current status and new strategies in stem cell transplantation Medicina Clinica 112(16): 618-620
Cottler-Fox, M.; Read, E.J.; Yu, M.; Carter, C.; Klein, H.G. 1992: Mononuclear and CD34+ stem cell recovery after automated Ficoll processing of marrow or peripheral blood stem cells for transplantation Progress in Clinical and Biological Research 377: 569-573
Chen, Y.; Xu, L-ping.; Liu, D-hong.; Chen, Y-hong.; Han, W.; Shi, H-xia.; Zhang, X-hui.; Wang, J-zhi.; Chen, H.; Liu, K-yan.; Huang, X-jun.; Lu, D-pei. 2007: Donor peripheral stem cells infusion for the treatment of failure of platelet recovery after allogeneic hematopoietic stem cell transplantation Zhonghua Yi Xue Za Zhi 87(14): 964-966
Jin, Z.; Wang, Q.; Bi, H.; Zhou, K.; He, L.; He, X.; Wu, Q.; Pan, X. 2015: Effects and possible mechanisms of mesenchymal stem cell transplantation on emphysema in rats Zhonghua Yi Xue Za Zhi 95(22): 1731-1735
Jurado, M.; Delgado, C.; Moratalla, A.; Casero, D.; Oyonarte, S.; de Pablos, J.M. 1996: Use of rhG-CSF in the collection of peripheral blood stem cells for autologous blood stem cell transplantation in acute myeloblastic leukemia Bone Marrow Transplantation 18(4): 821-822